Dynamic interaction between prostate cancer and the bone microenvironment is a major contributor to metastasis of prostate cancer to bone. In this study, we utilized an in vitro co-culture model of PC3 prostate cancer cells and osteoblasts followed by microarray based gene expression profiling to identify previously unrecognized prostate cancer-bone microenvironment interactions. Factors secreted by PC3 cells resulted in the up-regulation of many genes in osteoblasts associated with bone metabolism and cancer metastasis, including Mmp13, Il-6 and Tgfb2, and down-regulation of Wnt inhibitor Sost. To determine whether altered Sost expression in the bone microenvironment has an effect on prostate cancer metastasis, we co-cultured PC3 cells wit...
This article describes cell signaling network of metastatic prostate cancer (PCa) to bone and viscer...
Metastasis to the skeleton is the major cause of death from prostate cancer (PC). Patients with meta...
Bone metastasis of a predominantly osteoblastic (sclerotic) nature is the outcome for the vast major...
Dynamic interaction between prostate cancer and the bone microenvironment is a major contributor to...
Prostate cancer preferentially metastasizes to the skeleton and abundant evidence exists that osteob...
Metastasis to bone is the leading cause of death from prostate cancer. Interaction between tumor cel...
As microenvironmental factors such as three-dimensionality and cell-matrix interactions are increasi...
The reciprocal interaction between cancer cells and the tissue-specific stroma is critical for prima...
<div><p>The reciprocal interaction between cancer cells and the tissue-specific stroma is critical f...
The reciprocal interaction between cancer cells and the tissue-specific stroma is critical for prima...
As microenvironmental factors such as three-dimensionality and cell–matrix interactions are increasi...
Inhibitors of Wnt signaling have been shown to be involved in prostate cancer (PC) metastasis; howev...
As microenvironmental factors such as three-dimensionality and cell–matrix interactions are increasi...
The tendency of prostate cancer to produce osteoblastic bone metastases suggests that cancer cells a...
BACKGROUND Progressive prostate cancer typically metastasizes to bone where prostate cancer cells g...
This article describes cell signaling network of metastatic prostate cancer (PCa) to bone and viscer...
Metastasis to the skeleton is the major cause of death from prostate cancer (PC). Patients with meta...
Bone metastasis of a predominantly osteoblastic (sclerotic) nature is the outcome for the vast major...
Dynamic interaction between prostate cancer and the bone microenvironment is a major contributor to...
Prostate cancer preferentially metastasizes to the skeleton and abundant evidence exists that osteob...
Metastasis to bone is the leading cause of death from prostate cancer. Interaction between tumor cel...
As microenvironmental factors such as three-dimensionality and cell-matrix interactions are increasi...
The reciprocal interaction between cancer cells and the tissue-specific stroma is critical for prima...
<div><p>The reciprocal interaction between cancer cells and the tissue-specific stroma is critical f...
The reciprocal interaction between cancer cells and the tissue-specific stroma is critical for prima...
As microenvironmental factors such as three-dimensionality and cell–matrix interactions are increasi...
Inhibitors of Wnt signaling have been shown to be involved in prostate cancer (PC) metastasis; howev...
As microenvironmental factors such as three-dimensionality and cell–matrix interactions are increasi...
The tendency of prostate cancer to produce osteoblastic bone metastases suggests that cancer cells a...
BACKGROUND Progressive prostate cancer typically metastasizes to bone where prostate cancer cells g...
This article describes cell signaling network of metastatic prostate cancer (PCa) to bone and viscer...
Metastasis to the skeleton is the major cause of death from prostate cancer (PC). Patients with meta...
Bone metastasis of a predominantly osteoblastic (sclerotic) nature is the outcome for the vast major...